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Experimental study on low-cycle fatigue behaviours of the specimen consisting of the composites (Al-12Si/ABOw) and matrix Al-12Si alloys

机译:由复合材料(Al-12Si / Abow)和基质Al-12Si合金组成的试样的低周疲劳行为的实验研究

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摘要

The low-cycle fatigue tests of the specimen, which was composed of half composites reinforced by aluminium borate whisker (ABOw) and half unreinforced matrix alloys, were performed under different temperatures. The results showed that the specimen exhibited obvious cyclic hardening at low temperature while increasingly remarkable cyclic softening with the increase of temperature. Meanwhile, the micromorphology of the fracture surface revealed apparent brittle characteristics at low temperature but dominated ductile characteristics at high temperature. The analysis of curves of total strain amplitude versus fatigue life indicated that the dominant fatigue damage mechanism changed from the elastic damage to the plastic damage with the increase of total strain amplitude. In addition, the description of fatigue behaviours based on energy criterion suggested that the capacities of specimen to absorb and dissipate plastic strain energy improved with increasing of temperature but may also be weakened by the strengthening effect of composite part.
机译:由硼酸铝晶须(ABOW)和半未粘接基质合金增强的半复合材料组成的样品的低周疲劳试验在不同的温度下进行。结果表明,试样在低温下表现出明显的环状硬化,同时随着温度的增加而越来越显着的循环软化。同时,断裂表面的微晶显示在低温下表现脆性特性,但在高温下延伸延性特性。总应变幅度与疲劳寿命的曲线分析表明,主导疲劳损伤机制随着总应变幅度的增加而变化对塑料损伤的弹性损伤。此外,基于能量标准的疲劳行为的描述表明,随着温度的增加,样品吸收和消散塑性应变能的能力改善,但也可以通过复合部分的强化效果削弱。

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